Jiang Yan, Wen Jianping, Lan Li, Hu Zongding
Department of Biochemical Engineering, School of Chemical Engineering and Technology, Tianjin University, Tianjin 300072, PR China.
Biodegradation. 2007 Dec;18(6):719-29. doi: 10.1007/s10532-007-9100-3. Epub 2007 Jan 24.
Biodegradation of phenol and 4-chlorophenol (4-cp) using a pure culture of Candida tropicalis was studied. The results showed that C. tropicalis could degrade 2,000 mg l(-1) phenol alone and 350 mg l(-1) 4-cp alone within 66 and 55 h, respectively. The capacity of the strain to degrade phenol was obviously higher than that to degrade 4-cp. In the dual-substrate system, 4-cp intensely inhibited phenol biodegradation. Phenol beyond 800 mg l(-1) could not be degraded in the presence of 350 mg l(-1) 4-cp. Comparatively, low-concentration phenol from 100 to 600 mg l(-1) supplied a sole carbon and energy source for C. tropicalis in the initial phase of biodegradation and accelerated the assimilation of 4-cp, which resulted in the fact that 4-cp biodegradation velocity was higher than that without phenol. And the capacity of C. tropicalis to degrade 4-cp was increased up to 420 mg l(-1) with the presence of 100-160 mg l(-1) phenol. In addition, the intrinsic kinetics of cell growth and substrate degradation were investigated with phenol and 4-cp as single and mixed substrates in batch cultures. The results illustrated that the models proposed adequately described the dynamic behaviors of biodegradation by C. tropicalis.
研究了热带假丝酵母纯培养物对苯酚和4-氯苯酚(4-CP)的生物降解。结果表明,热带假丝酵母分别能在66小时和55小时内单独降解2000 mg l(-1)苯酚和350 mg l(-1) 4-CP。该菌株降解苯酚的能力明显高于降解4-CP的能力。在双底物系统中,4-CP强烈抑制苯酚的生物降解。在存在350 mg l(-1) 4-CP的情况下,超过800 mg l(-1)的苯酚无法降解。相比之下,100至600 mg l(-1)的低浓度苯酚在生物降解初期为热带假丝酵母提供了唯一的碳源和能源,并加速了4-CP的同化,导致4-CP的生物降解速度高于无苯酚时。并且在存在100-160 mg l(-1)苯酚的情况下,热带假丝酵母降解4-CP的能力提高到420 mg l(-1)。此外,在分批培养中以苯酚和4-CP作为单一和混合底物研究了细胞生长和底物降解的内在动力学。结果表明,所提出的模型充分描述了热带假丝酵母生物降解的动态行为。